In turbulence-resolving simulations, smaller eddies account for most of the computational cost. This is especially true for a wall-bounded turbulent flow, where a wall-resolved large eddy simulation might use more than 99% of the computing power to resolve the inner 10% of the boundary layer in realistic flows.The solution is to use an approximate model in the inner 10% of the boundary layer where the turbulence is expected to exhibit universal behavior, a technique generally called wall-modeled large eddy simulation. Wall-modeled large-eddy simulation introduces a modeling interface (or exchange location) separating the wall-modeled layer from the rest of the domain. The current state-of-the-art is to rely on user expertise when choosing ...
This paper reports the findings from a study that applies wall-resolved large-eddy simulation to inv...
The main purpose of this thesis has been to contribute to the development of methodologies for wall ...
This work studies the implementation of wall modeling for large‐eddy simulation in a finite element ...
The direct simulation of turbulent flows is prohibitive at high Reynolds numbers; thus, methods such...
In the simulation of turbulent flows, resolving flow motions near a solid surface requires a high re...
In the simulation of turbulent flows, resolving flow motions near a solid surface requires a high re...
Large-eddy simulation (LES) of wall-bounded flows is limited to moderate Reynolds number flows due t...
© 2015 Dr. William Thomas SidebottomTurbulence is of interest in many engineering applications, rang...
In the simulation of turbulent flows, resolving flow motions near a solid surface requires a high re...
Large-eddy simulation (LES) requires very high resolution in high Reynolds number, attached turbulen...
The chaotic nature of turbulent flows results in a broad spectrum of flow scales, including at the s...
The paper provides a brief introduction to the near-wall problem of LES and how it can be solved thr...
Wall-bounded turbulent flows are prevalent in engineering and industrial applications. Walls greatly...
Developments in three dimensional, time dependent numerical simulation of turbulent flows bounded by...
Flow turbulence modeling is an expensive computational operation that is often run with simulations ...
This paper reports the findings from a study that applies wall-resolved large-eddy simulation to inv...
The main purpose of this thesis has been to contribute to the development of methodologies for wall ...
This work studies the implementation of wall modeling for large‐eddy simulation in a finite element ...
The direct simulation of turbulent flows is prohibitive at high Reynolds numbers; thus, methods such...
In the simulation of turbulent flows, resolving flow motions near a solid surface requires a high re...
In the simulation of turbulent flows, resolving flow motions near a solid surface requires a high re...
Large-eddy simulation (LES) of wall-bounded flows is limited to moderate Reynolds number flows due t...
© 2015 Dr. William Thomas SidebottomTurbulence is of interest in many engineering applications, rang...
In the simulation of turbulent flows, resolving flow motions near a solid surface requires a high re...
Large-eddy simulation (LES) requires very high resolution in high Reynolds number, attached turbulen...
The chaotic nature of turbulent flows results in a broad spectrum of flow scales, including at the s...
The paper provides a brief introduction to the near-wall problem of LES and how it can be solved thr...
Wall-bounded turbulent flows are prevalent in engineering and industrial applications. Walls greatly...
Developments in three dimensional, time dependent numerical simulation of turbulent flows bounded by...
Flow turbulence modeling is an expensive computational operation that is often run with simulations ...
This paper reports the findings from a study that applies wall-resolved large-eddy simulation to inv...
The main purpose of this thesis has been to contribute to the development of methodologies for wall ...
This work studies the implementation of wall modeling for large‐eddy simulation in a finite element ...